Can ectomycorrhizal fungi circumvent the nitrogen mineralization for plant nutrition in temperate forest ecosystems
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Summary
Interactions between saprotrophic microorganisms and ectomycorrhizal fungi are likely to be essential in the cycling of N within temperate forest ecosystems.
- Type
- article
- Published
- 2011-06-01
- Cited by
- 58
- References
- 151
- OpenAlex
- https://openalex.org/W1973834390
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:83881557
Keywords
Ecosystem, Mineralization (soil science), Nitrogen cycle, Forest floor, Forest ecology
References
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- Principles and Applications of Soil Microbiology
- Ecology and Management of Forest Soils
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- Mycorrhiza and carbon flow to the soil
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- Mobilization and transfer of nutrients from litter to tree seedlings via the vegetative mycelium of ectomycorrhizal plants
- Decomposition in Terrestrial Ecosystems
- Proteinase activity in mycorrhizal fungi III.
- A Comparative Analysis of Potential Nitrification and Nitrate Mobility in Forest Ecosystems
Cited by
- Mechanisms of nutrient limitation and nutrient acquisition in managed and unmanaged forest ecosystems
- Response pattern of amino compounds in phloem and xylem of trees to soil drought depends on drought intensity and root symbiosis.
- The production and turnover of extramatrical mycelium of ectomycorrhizal fungi in forest soils: role in carbon cycling
- Ectomycorrhizal inoculation with Pisolithus tinctorius increases the performance of Quercus suber L. (cork oak) nursery and field seedlings
- Condensed tannins increase nitrogen recovery by trees following insect defoliation.
- The soil N cycle: new insights and key challenges
- Gross Nitrogen Dynamics in the Mycorrhizosphere of an Organic Forest Soil
- Thirty four years of nitrogen fertilization decreases fungal diversity and alters fungal community composition in black soil in northeast China
- Belowground carbon turnover in European Forests: Fine roots, mycorrhizal mycelia, soil organic matter and soil models
- Assessment of urea coated with pomegranate fruit powder as N slow-release fertilizer in maize
- Mycorrhizal roots in a temperate forest take up organic nitrogen from 13C- and 15N-labeled organic matter
- Slow decomposition of leaf litter from mature Fagus sylvatica trees promotes offspring nitrogen acquisition by interacting with ectomycorrhizal fungi
- Impact of mowing management on nitrogen mineralization rate and fungal and bacterial communities in a semiarid grassland ecosystem
- Influence of inorganic fertilizer and organic manure application on fungal communities in a long-term field experiment of Chinese Mollisols
- Plant interactions as biotic drivers of plasticity in leaf litter traits and decomposability of Quercus petraea
- Chemical changes in organic matter after fungal colonization in a nitrogen fertilized and unfertilized Norway spruce forest
- Minerals in the rhizosphere: overlooked mediators of soil nitrogen availability to plants and microbes
- Net nitrogen mineralization and enzyme activities in an alpine meadow soil amended with litter tannins
- Mycelia‐derived C contributes more to nitrogen cycling than root‐derived C in ectomycorrhizal alpine forests
- Grazing and enclosure alter the vertical distribution of organic nitrogen pools and bacterial communities in semiarid grassland soils
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